An exploration of evolution, maturation, expression and function relationships in mir-23 ∼ 27 ∼ 24 cluster.

The study aims to explore the potential relationships of evolution, maturation, expression and function between homologous/clustered miRNAs. mir-23 ∼ 27 ∼ 24 gene cluster, including the two gene clusters (mir-23a and mir-23b) and the three miRNA gene families (mir-23, mir-27 and mir-24), was typical...

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Main Authors: Tingming Liang, JiaFeng Yu, Chang Liu, Li Guo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4144971?pdf=render
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spelling doaj-fa2591e01a7d4173a907a7609e5f654f2020-11-25T02:32:13ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0198e10622310.1371/journal.pone.0106223An exploration of evolution, maturation, expression and function relationships in mir-23 ∼ 27 ∼ 24 cluster.Tingming LiangJiaFeng YuChang LiuLi GuoThe study aims to explore the potential relationships of evolution, maturation, expression and function between homologous/clustered miRNAs. mir-23 ∼ 27 ∼ 24 gene cluster, including the two gene clusters (mir-23a and mir-23b) and the three miRNA gene families (mir-23, mir-27 and mir-24), was typically selected as an example. These related miRNAs show similar evolutionary patterns and various expression patterns. Most of them show consistent isomiR expression pattern, and the "switching" phenomenon can be found between different abundant isomiR species. These findings suggest that these sequence or location related miRNAs show the similar miRNA processing and maturation processes, and the robust selection of the most dominant isomiR exists in specific tissues. Functional analysis show that these miRNAs show similar distributions of enriched gene categories, suggesting the close functional prelateships via direct or indirect coordinate regulation in biological processes. The study reveals the close evolutionary, expression and functional relationships between related homologous/clustered miRNAs, which will further enrich miRNA studies and understand direct or indirect interactions between miRNAs.http://europepmc.org/articles/PMC4144971?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Tingming Liang
JiaFeng Yu
Chang Liu
Li Guo
spellingShingle Tingming Liang
JiaFeng Yu
Chang Liu
Li Guo
An exploration of evolution, maturation, expression and function relationships in mir-23 ∼ 27 ∼ 24 cluster.
PLoS ONE
author_facet Tingming Liang
JiaFeng Yu
Chang Liu
Li Guo
author_sort Tingming Liang
title An exploration of evolution, maturation, expression and function relationships in mir-23 ∼ 27 ∼ 24 cluster.
title_short An exploration of evolution, maturation, expression and function relationships in mir-23 ∼ 27 ∼ 24 cluster.
title_full An exploration of evolution, maturation, expression and function relationships in mir-23 ∼ 27 ∼ 24 cluster.
title_fullStr An exploration of evolution, maturation, expression and function relationships in mir-23 ∼ 27 ∼ 24 cluster.
title_full_unstemmed An exploration of evolution, maturation, expression and function relationships in mir-23 ∼ 27 ∼ 24 cluster.
title_sort exploration of evolution, maturation, expression and function relationships in mir-23 ∼ 27 ∼ 24 cluster.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description The study aims to explore the potential relationships of evolution, maturation, expression and function between homologous/clustered miRNAs. mir-23 ∼ 27 ∼ 24 gene cluster, including the two gene clusters (mir-23a and mir-23b) and the three miRNA gene families (mir-23, mir-27 and mir-24), was typically selected as an example. These related miRNAs show similar evolutionary patterns and various expression patterns. Most of them show consistent isomiR expression pattern, and the "switching" phenomenon can be found between different abundant isomiR species. These findings suggest that these sequence or location related miRNAs show the similar miRNA processing and maturation processes, and the robust selection of the most dominant isomiR exists in specific tissues. Functional analysis show that these miRNAs show similar distributions of enriched gene categories, suggesting the close functional prelateships via direct or indirect coordinate regulation in biological processes. The study reveals the close evolutionary, expression and functional relationships between related homologous/clustered miRNAs, which will further enrich miRNA studies and understand direct or indirect interactions between miRNAs.
url http://europepmc.org/articles/PMC4144971?pdf=render
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